Seyfried C A, Adam G, Greve T
Department of Neurochemistry, Biological Research, E. Merck, Darmstadt, Germany.
Biomed Chromatogr. 1986 Apr;1(2):78-88. doi: 10.1002/bmc.1130010206.
An automated, highly stable HPLC system is described allowing the quantitation of monoamines and related compounds with virtually online data processing and statistical evaluation of the mean values of various differently treated groups of animals. The system is highly suited to the screening of drugs involving large numbers of samples. To ensure long-term, uninterrupted performance, two robust chromatographic systems were developed optimized to separate neighboring peaks as widely as possible. This was achieved by using mobile phases of relatively low pH to retard acidic compounds, and optimal concentrations of the ion-pairing reagent to manipulate the retention times of amines on the RP-18 column, resulting also in clearcut separations from the solvent/tissue peak. Direct injection of deproteinized tissue samples, requiring no clean up procedures is used. One faster system allows measurement of the main biogenic amines, metabolites and TRP, whereas another system allows the simultaneous quantitation of DOPA, 5HTP, NA, MOPEG, NMN, A, MN, VMA, DA, 3MT, DOPAC, HVA, 5HT, 5HIAA and TYR. By pretreatment of animals with a decarboxylase inhibitor the latter system offers the possibility of detecting drug effects in the same animal on either dopamine and serotonin turnover or noradrenaline and serotonin turnover, depending on the brain area chosen. The system described has been running for over a year without major disturbance and with minimal technician attendance.
本文描述了一种自动化、高度稳定的高效液相色谱(HPLC)系统,该系统能够对单胺类及相关化合物进行定量分析,具备几乎在线的数据处理功能,并能对不同处理组动物的均值进行统计评估。该系统非常适合用于大量样品的药物筛选。为确保长期不间断运行,开发了两种强大的色谱系统,其经过优化可尽可能广泛地分离相邻峰。这通过使用相对低pH值的流动相来延迟酸性化合物,以及使用最佳浓度的离子对试剂来控制胺类在RP - 18柱上的保留时间来实现,同时也能与溶剂/组织峰实现清晰分离。采用直接进样脱蛋白组织样品的方式,无需净化程序。一种较快的系统可用于测量主要的生物胺、代谢物和色氨酸(TRP),而另一种系统能够同时定量测定多巴(DOPA)、5 - 羟色氨酸(5HTP)、去甲肾上腺素(NA)、3 - 甲氧基 - 4 - 羟基苯乙二醇(MOPEG)、烟酰胺单核苷酸(NMN)、肾上腺素(A)、间甲肾上腺素(MN)、香草扁桃酸(VMA)、多巴胺(DA)、3 - 甲基多巴(3MT)、3,4 - 二羟基苯乙酸(DOPAC)、高香草酸(HVA)、5 - 羟色胺(5HT)、5 - 羟吲哚乙酸(5HIAA)和酪氨酸(TYR)。通过用脱羧酶抑制剂对动物进行预处理,后一种系统提供了根据所选脑区检测同一动物中药物对多巴胺和5 - 羟色胺代谢或去甲肾上腺素和5 - 羟色胺代谢影响的可能性。所描述的系统已经运行了一年多,没有出现重大故障,且只需最少的技术人员维护。